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Qinsenoside Re suppresses electromechanical alternans in cat and human cardiomyocytes

机译:人参皂甙Re抑制猫和人心肌细胞中的机电交替蛋白

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First published June 20,2008; doi:l 0.1152/ajpheart.01242.2007.-Ginseng botanicals are increasingly used as complementary or alternative medicines for a variety of cardiovascular diseases, yet little is known about their cellular actions in cardiac muscle. Electromechanical alternans (EMA) is a proarrhythmic cardiac abnormality that results from disturbances of intracellular Ca~(2+) homeostasis. This study sought to determine whether a purified ginsenoside extract of ginseng, Re, exerts effects to suppress EMA and to gain insight into its mechanism of action. Alternans was induced by electrically pacing cardiomyocytes at room temperature. Re (>10 nM) reversibly suppressed EMA recorded from cat ventricular and atrial myocytes and Langendorff-perfused cat hearts. In cat ventricular myocytes, Re reversibly suppressed intracellular Ca~(2+) concentration ([Ca~(2+)]j) transient alternans. Re exerted no significant effects on baseline action potential configuration or sarcolemmal L-type Ca~(2+) current (I_(Ca.L)), Na+ current, or total K+ conductance. In human atrial myocytes, Re suppressed mechanical alternans and exerted no effect on I_(Ca.L)- In cat ventricular myocytes, Re increased [Ca~(2+)]i transient amplitude and decreased sarcoplasmic reticulum (SR) Ca~(2+) content, resulting in an increase in fractional SR Ca~(2+) release. In SR microsomes isolated from cat ventricles, Re had no effect on SR Ca~(2+) uptake. Re increased the open probability of ryanodine receptors (RyRs), i.e., SR Ca~(2+)-release channels, isolated from cat ventricles and incorporated into planar lipid bilayers. We concluded that ginsenoside Re suppresses EMA in cat atrial and ventricular myocytes, cat ventricular muscle, and human atrial myocytes. The effects of Re are not mediated via actions on sarcolemmal ion channels or action potential configuration. Re acts via a subcellular mechanism to enhance the opening of RyRs and thereby overcome the impaired SR Ca~(2+) release underlying EMA.
机译:2008年6月20日首次发布; doi:l 0.1152 / ajpheart.01242.2007.-人参植物药被越来越多地用作各种心血管疾病的补充或替代药物,但人们对其在心肌中的细胞作用知之甚少。机电交替素(EMA)是一种心律失常的心脏异常,是由细胞内Ca〜(2+)稳态干扰引起的。这项研究试图确定人参Re的纯化人参皂苷提取物是否发挥抑制EMA的作用,并深入了解其作用机理。在室温下通过电起搏心肌细胞诱导出交替蛋白。从猫心室和心房肌细胞以及Langendorff灌注的猫心中记录到的Re(> 10 nM)可逆抑制EMA。在猫心室肌细胞中,可逆性抑制细胞内Ca〜(2+)浓度([Ca〜(2 +)] j)短暂交替。稀土元素对基线动作电位构型或肌膜L型Ca〜(2+)电流(I_(Ca.L)),Na +电流或总K +电导率均无显着影响。在人心房肌细胞中,Re抑制了机械交替素,对I_(Ca.L)没有影响。在猫心室肌细胞中,Re增加了[Ca〜(2 +)] i瞬时振幅,并减少了肌浆网(SR)Ca〜(2) +)含量,导致SR Ca〜(2+)释放分数增加。在猫脑室分离的SR微粒体中,Re对SR Ca〜(2+)的吸收没有影响。 Re增加了从猫脑室分离并掺入平面脂质双层的ryanodine受体(RyRs),即SR Ca〜(2 +)-释放通道的开放可能性。我们得出的结论是,人参皂甙Re可抑制猫心房和心室肌细胞,猫心室肌和人心房肌细胞中的EMA。 Re的作用不是通过对肌膜离子通道的作用或动作电位构型来介导的。 Re通过亚细胞机制发挥作用,增强RyRs的开放性,从而克服EMA潜在的SR Ca〜(2+)释放受损。

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